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1.
International Journal of Environmental Science and Technology. 2011; 8 (4): 781-792
in English | IMEMR | ID: emr-113265

ABSTRACT

The voltage and the power production of two gram negative and two gram positive bacteria in four identical continuous flow microbial fuel cells combined with biological wastewater treatment units were evaluated and compared in the present study. Each microbial fuel cell and biological treatment unit was operated at four different flow rates and four different external load resistances. The results show that overall removal efficiency of chemical oxygen demand for all four systems can reach more than 85.5%. Each pure culture has different power generation performance that can be affected by some factors, such as wastewater characteristics, influent flow rate, and hydraulic retention time of reactor. Good linear relationships between the flow rate and the potential and between the flow rate and the power density on four pure cultures at different external load resistances were found. Comamonas testosteroni has better power generation performance than Arthrobacter polychromogenes, especially at higher flow rate. Although Pseudomonas putida also showed higher power generation than Corynebacterium glutamicum, the difference was not statistically significant. It seems that gram negative bacteria could display higher power generation than gram positive bacteria at higher flow rate. However, more evidence is required to provide stronger proof for the difference of power generation between gram negative and gram positive bacteria

2.
International Journal of Environmental Science and Technology. 2010; 7 (4): 705-716
in English | IMEMR | ID: emr-98573

ABSTRACT

The objectives of this study are to investigate the levels of noise pollution in some hospitals in Taiwan and to study the effects of noise pollution on the physiological and psychological reactions and annoyance response of medical care staff, patients and visitors in these hospitals. An instrument for the measurement of sound level was used and a self-answered survey questionnaire on noise pollution was administered. Results showed that the daily average sound levels measured inside these hospitals during daytime were between 52.6 and 64.6 decibels. These are higher than the current daytime environmental noise limit of 50 decibels in Taiwan. Most nursing staff members expressed that "talking of visitors or patient's family members" is the major source of noise inside the wards, whereas "talking of visitors or patient's family members" and "children playing" are the two major noise sources outside the wards. However, most patients or visitors claimed that "doors opening or closing" and "patients moaning or crying" are the two major sources of noise inside the wards. "Footsteps," "renovation of hospitals," "talking of visitors or patient's family members," "shouting of nursing staff" and "doors opening or closing" are the five major noise sources outside the wards. To conclude, noise pollution inside and outside the wards either directly or indirectly affects, in a simultaneous manner, the subjective perception of noise, emotions, physiology and experience of noise inside and outside the wards of both the medical care staff and the patients and visitors


Subject(s)
Humans , Male , Female , Health Personnel , Patients , Hospitals , Surveys and Questionnaires , Sound , Nursing Staff, Hospital
3.
International Journal of Environmental Science and Technology. 2009; 6 (4): 545-556
in English | IMEMR | ID: emr-100266

ABSTRACT

The objectives of this study were to identify the chlorinated volatile organic compounds near the water surface of two heavily polluted rivers in the south of Taiwan and compare their concentration distributions. Air samples were collected seasonally at the upstream, midstream and downstream water surfaces of each river and the chlorinated volatile organic compounds were analyzed qualitatively and quantitatively by gas chromatography and electron capture detector. Totally, twelve kinds of chlorinated volatile organic compounds were found at the water surfaces of both rivers and many of them were reported to be carcinogenic or probably carcinogenic to human. The results showed that each chlorinated volatile organic compound had its own distribution pattern and no good correlation of chlorinated volatile organic compounds between both rivers was obtained. The chlorinated volatile organic compounds identified at the river water surface of Fong Shan Stream showed much higher concentration than those of Chuen-Tsen River. Several chlorinated volatile organic compounds, including chlorodibromomethane, hexachlorobutadiene, 1,1,2,2-tetraehloroethene and 1,2-dibromo-3-chloropropane were found with much higher concentration [mean concentrations of 124.5 micro g/m[3], 334.5 micro g/ m[3], 92.2 micro g/m[3], 268.4 micro g/m[3], respectively] at the water surface of Fong Shan Stream in some seasons [especially spring and summer, summer and winter, spring and winter, spring and summer, respectively] and they were reported to be possibly carcinogenic to human. Therefore, it may be concluded that the people living close to Fong Shan Stream possibly had higher health risks due to the release of volatile organic compounds from the heavily polluted river


Subject(s)
Hydrocarbons, Chlorinated , Water , Rivers , Water Pollution , Risk Assessment , Carcinogens , Chlorobenzenes
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